ACE502. Technology. Typical Performance Characteristic: A CE50218AM+ Dropout Voltage. Vin (V) VER 1.2 1

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1 Description series is a group of positive voltage output, low power consumption, low dropout voltage, three terminal regulator. It can provide 200mA output current when input / output voltage differential drops to 470mV(Vout=2.0V) The very low power consumption of (Iq=7uA)can greatly improve natural life of batteries. can provide output value in the range of 1.5V~6.0V in 0.1V steps. It also can customized on command. includes high accuracy voltage reference, error amplifier, current limit circuit and output driver module. has well load transient response and good temperature characteristic, which can assure the stability of chip and power system. And it uses trimming technique to guarantee output voltage accuracy within ±2%. is available in SOT-89-3 SOT-23-3 SOT-23-5 packages which is lead free,it also can available in these packages with lead. Features Low Power Consumption: 7uA (Typ) Maximum Output Current: 400mA Small Dropout Voltage 250mV@100mA (Vout=2.0V) / 470mV@200mA (Vout=2.0V) Input Voltage Range: 2.0V~10V Output Voltage Range: 1.5V~6.0V (customized on command in 0.1V steps) High Accurate: ±2% (±1% customized) Output Current Limit Application Battery Powered equipment Power Management of MP3. PDA. DSC. Mouse. PS2 Games Reference Voltage Source Regulation after Switching Power Typical Performance Characteristic: A CE50218AM+ Dropout Voltage Vin (V) VER 1.2 1

2 Absolute Maximum Ratings Parameter Symbol Max Unit Max Input voltage VIN 10 V Power Dissipation SOT W SOT SOT Junction temperature TJ 125 O C Storage temperature TS - 45 to 150 O C Ambient Temperature T A -40 ~85 O C Packaging Type SOT-89-3 SOT-23-3 SOT Pin SOT-89-3 SOT-23-3 SOT-23-5(A) SOT-23-5(B) Function V IN Supply Voltage Input V SS Ground CE 3 4 Enable Pin NC 4 5 No connect V OUT Output Voltage Ordering information Selection Guide XX XX + H Halogen - free Pb - free AM : SOT-89-3 BM: SOT-23-3 BNA: SOT-23-5 BNB: SOT-23-5 Output Voltage: 1.5V/2.2V..6.0V VER 1.2 2

3 Block Diagram Recommended Work Conditions Item Min Recommended Max Unit Input Voltage Range 8 V Ambient Temperature Electrical Characteristics (Test Conditions: Cin=1uF, Cout=1uF,T A =25, unless otherwise specified.) -1.8V Parameter Symbol Conditions Min Typ Max Units Input Voltage V IN 8 V Output Voltage V OUT V Maximum Output Current I OUT (Max.) V IN =V OUT +1.0V,V OUT >1.8 V* ma Input-Output Voltage Dropout I OUT =100mA Differential Voltage I OUT =200mA mv Line Regulation I OUT =40mA ΔV IN V OUT 2 V IN 8A %/V Load Regulation ΔV OUT V IN =2.8V 1mA I OUT 100mA ma Quiescent Current Iq V IN =V OUT +1V 7 10 ua Output Noise Noise f=10hz to 100kHz, 40 uvrms Ripple Rejection PSRR f=100hz,i OUT =40mA, 60 db Output Voltage Temperature Coefficient ΔT V OUT I OUT =10mA 50 ppm/ VER 1.2 3

4 -2.0V Parameter Symbol Conditions Min Typ Max Units Input Voltage V IN 8 V Output Voltage V OUT V IN =V OUT +1.0V,I OUT =40mA V Maximum Output Current I OUT (Max.) V IN =V OUT +1.0V,V OUT >2.0* ma Input-Output Voltage Dropout I OUT =100mA Differential Voltage I OUT =200mA mv Line Regulation I OUT =40mA ΔV IN V OUT 2.2 V IN 8A %/V Load Regulation ΔV OUT V IN =3.0V 1mA I OUT 100mA ma Quiescent Current Iq V IN =V OUT +1V 7 10 ua Output Noise Noise f=10hz to 100kHz, 40 uvrms Ripple Rejection PSRR f=100hz,i OUT =40mA, 60 db Output Voltage Temperature Coefficient ΔT V OUT 50 ppm/ -3.0V Parameter Symbol Conditions Min Typ Max Units Input Voltage V IN 8 V Output Voltage V OUT V IN =V OUT +1.0V,I OUT =40mA V Maximum Output Current I OUT (Max.) V IN =V OUT +1.0V,V OUT >3.0* ma Input-Output Voltage Dropout I OUT =100Ma Differential Voltage I OUT =200mA mv Line Regulation I OUT =40mA ΔV IN V OUT 3.2 V IN 8A %/V Load Regulation ΔV OUT V IN =4.0V 1mA I OUT 100mA ma Quiescent Current Iq V IN =V OUT +1V 7 10 ua Output Noise Noise f=10hz to 100kHz, 40 uvrms Ripple Rejection PSRR f=100hz,i OUT =40mA, 60 db Output Voltage Temperature Coefficient ΔT V OUT 50 ppm/ VER 1.2 4

5 -3.3V Parameter Symbol Conditions Min Typ Max Units Input Voltage V IN 8 V Output Voltage V OUT V IN =V OUT +1.0V,I OUT =40mA V Maximum Output Current I OUT (Max.) V IN =V OUT +1.0V,V OUT >3.3* ma Input-Output Voltage Dropout I OUT =100Ma Differential Voltage I OUT =200mA mv Line Regulation I OUT =40mA ΔV IN V OUT 3.5 V IN 8A %/V Load Regulation ΔV OUT V IN =4.3V 1mA I OUT 100mA ma Quiescent Current Iq V IN =V OUT +1V 7 10 ua Output Noise Noise f=10hz to 100kHz, 40 uvrms Ripple Rejection PSRR f=100hz,i OUT =40mA, 60 db Output Voltage Temperature Coefficient Typical Application Circuit ΔT V OUT 50 ppm/ Vin Vin Vout Vout GND + 1uF + 1uF Cin Cout Application hints: Note 1:Input capacitor (Cin=1uF) is recommended in all application circuit. Tantalum capacitor is recommended. Note 2:Output capacitor (Cout=1uF) is recommended in all application to assure the stability of circuit. Tantalum capacitor is recommended. Explanation: is a series of low dropout voltage and low power consumption three pins regulator. Its application circuit is very simple, which only needs two outside capacitors. It is composed of these modules: high accuracy voltage reference, current limit circuit, error amplifier, output driver and power transistor. Current Limit module can keep chip and power system away from danger when load current is more than 400mA. uses trimming technique to assure the accuracy of output value within±2%, at the same time, temperature compensated is elaborately considered in this chip, which makes s temperature coefficient within 50ppm/. VER 1.2 5

6 Typical Performance Characteristics 1. Load regulation V OUT =1.8V Load regulation (V IN =2.8V) V OUT =2V Load regulation (V IN =3V) Output Voltage vs. Output Current Output Voltage vs. Output Current V OUT =1.8V V OUT =2V I OUT (ma) I OUT (ma) V OUT =3.3V Load regulation (V IN =4.3V) V OUT =5V Load regulation (V IN =6V) Output Voltage vs. Output Current Output Voltage vs. Output Current V OUT =3.3V V OUT =5V I OUT (ma) 2. Line Regulation V OUT =1.8V Line regulation (I OUT =40mA) Line regulation (V OUT =1.8V) I OUT (ma) V OUT =2.0V Line regulation (I OUT =40mA) Line regulation (V OUT =2V) V IN (V) V IN (V) VER 1.2 6

7 V OUT =3.3V Line regulation (I OUT =40mA) Line regulation (V OUT =3.3V) V OUT =5.0V Line regulation (I OUT =40mA) Line regulation (V OUT =5V) V IN (V) 3. Input Voltage transient response V OUT =1.8V (I OUT =10mA) V OUT =2.0V (I OUT =10mA) V IN (V) V OUT =3.3V (I OUT =10mA) V OUT =5.0V (I OUT =10mA) VER 1.2 7

8 4. Load transient response V OUT =3.3V (V IN =4.3V) V OUT =5.0V (V IN =6V) 5. Ripple rejection Ripple rejection C OUT =1uF I OUT =40mA VER 1.2 8

9 Packing Information SOT-89-3 VER 1.2 9

10 Packing Information SOT-23-3 VER

11 Packing Information SOT-23-5 VER

12 Notes ACE does not assume any responsibility for use as critical components in life support devices or systems without the express written approval of the president and general counsel of ACE Electronics Co., LTD. As sued herein: 1. Life support devices or systems are devices or systems which, (a) are intended for surgical implant into the body, or (b) support or sustain life, and shoes failure to perform when properly used in accordance with instructions for use provided in the labeling, can be reasonably expected to result in a significant injury to the user. 2. A critical component is any component of a life support device or system whose failure to perform can be reasonably expected to cause the failure of the life support device or system, or to affect its safety or effectiveness. ACE Technology Co., LTD. VER

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